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    • 21. 发明申请
    • FACTORY LEVEL PROCESS AND FINAL PRODUCT PERFORMANCE CONTROL SYSTEM
    • 工厂级工艺和最终产品性能控制系统
    • US20120130520A1
    • 2012-05-24
    • US13299081
    • 2011-11-17
    • Suketu Arun ParikhAlexander T. SchwarmSanjiv MittalCharles Gay
    • Suketu Arun ParikhAlexander T. SchwarmSanjiv MittalCharles Gay
    • G05B19/418
    • G05B19/41875G05B2219/32182Y02P90/12Y02P90/18Y02P90/22
    • A factory control server stores module configuration data for modules. The modules include processes for producing a final product and have corresponding module requirements. The factory control server analyzes in real-time actual product output data that is generated by a final product tester after a factory produces at least one final product to determine whether the actual product output data meets an expected product output. The factory control server analyzes actual module data in real-time to determine a new module requirement to cause new actual product output data for a subsequent final product to meet the expected product output in response to a determination that the actual product output data does not meet the expected product output. The factory control server notifies a module controller in real-time of the new module requirement. The module controller changes parameters in real-time to manufacture the subsequent final product.
    • 工厂控制服务器存储模块的模块配置数据。 这些模块包括生产最终产品的过程,并具有相应的模块要求。 工厂控制服务器在工厂生产至少一个最终产品之后分析由最终产品测试者生成的实时实际产品输出数据,以确定实际产品输出数据是否满足预期的产品输出。 工厂控制服务器实时分析实际的模块数据,以确定新的模块要求,以便随后的最终产品产生新的实际产品输出数据以满足预期的产品输出以响应确定实际的产品输出数据不符合 预期产品产量。 工厂控制服务器实时通知模块控制器新模块要求。 模块控制器实时更改参数以制造后续最终产品。
    • 22. 发明授权
    • Electroplating on roll-to-roll flexible solar cell substrates
    • 卷对卷柔性太阳能电池基板上的电镀
    • US07799182B2
    • 2010-09-21
    • US11566200
    • 2006-12-01
    • Sergey LopatinDavid EagleshamCharles Gay
    • Sergey LopatinDavid EagleshamCharles Gay
    • C25D17/00
    • C25D5/022C25D5/18C25D7/08C25D17/00C25D17/001H01L31/022425H01L31/02245H01L31/022466H01L31/03926H01L31/0465H01L31/0508H01L31/0512H01L31/0516H01L31/188Y02E10/50
    • Embodiments of the invention contemplate the formation of a low cost flexible solar cell using a novel electroplating method and apparatus to form a metal contact structure. The apparatus and methods described herein remove the need to perform one or more high temperature screen printing processes to form conductive features on the surface of a solar cell substrate. The resistance of interconnects formed in a solar cell device greatly affects the efficiency of the solar cell. Solar cell substrates that may benefit from the invention include flexible substrates may have an active region that contains organic material, single crystal silicon, multi-crystalline silicon, polycrystalline silicon, germanium, and gallium arsenide, cadmium telluride, cadmium sulfide, copper indium gallium selenide, copper indium selenide, gallilium indium phosphide, as well as heterojunction cells that are used to convert sunlight to electrical power. The flexible substrates may have a flexible base that is adapted to support the active region of the solar cell device.
    • 本发明的实施例考虑使用新颖的电镀方法和装置形成金属接触结构来形成低成本的柔性太阳能电池。 本文所述的装置和方法消除了执行一个或多个高温丝网印刷工艺以在太阳能电池基板的表面上形成导电特征的需要。 在太阳能电池器件中形成的互连的电阻极大地影响太阳能电池的效率。 可以受益于本发明的太阳能电池基板包括柔性基板可以具有含有有机材料,单晶硅,多晶硅,多晶硅,锗和砷化镓,碲化镉,硫化镉,铜铟镓硒的有源区 ,铜铟硒化铟,磷化铟镓,以及用于将阳光转换成电力的异质结电池。 柔性基板可以具有适于支撑太阳能电池装置的有源区域的柔性基座。